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Endochondral Ossification Is Accelerated in Cholinesterase-Deficient Mice and in Avian Mesenchymal Micromass Cultures.
- Source :
-
PloS one [PLoS One] 2017 Jan 24; Vol. 12 (1), pp. e0170252. Date of Electronic Publication: 2017 Jan 24 (Print Publication: 2017). - Publication Year :
- 2017
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Abstract
- Most components of the cholinergic system are detected in skeletogenic cell types in vitro, yet the function of this system in skeletogenesis remains unclear. Here, we analyzed endochondral ossification in mutant murine fetuses, in which genes of the rate-limiting cholinergic enzymes acetyl- (AChE), or butyrylcholinesterase (BChE), or both were deleted (called here A-B+, A+B-, A-B-, respectively). In all mutant embryos bone growth and cartilage remodeling into mineralizing bone were accelerated, as revealed by Alcian blue (A-blu) and Alizarin red (A-red) staining. In A+B- and A-B- onset of mineralization was observed before E13.5, about 2 days earlier than in wild type and A-B+ mice. In all mutants between E18.5 to birth A-blu staining disappeared from epiphyses prematurely. Instead, A-blu+ cells were dislocated into diaphyses, most pronounced so in A-B- mutants, indicating additive effects of both missing ChEs in A-B- mutant mice. The remodeling effects were supported by in situ hybridization (ISH) experiments performed on cryosections from A-B- mice, in which Ihh, Runx2, MMP-13, ALP, Col-II and Col-X were considerably decreased, or had disappeared between E18.5 and P0. With a second approach, we applied an improved in vitro micromass model from chicken limb buds that allowed histological distinction between areas of cartilage, apoptosis and mineralization. When treated with the AChE inhibitor BW284c51, or with nicotine, there was decrease in cartilage and accelerated mineralization, suggesting that these effects were mediated through nicotinic receptors (α7-nAChR). We conclude that due to absence of either one or both cholinesterases in KO mice, or inhibition of AChE in chicken micromass cultures, there is increase in cholinergic signalling, which leads to increased chondroblast production and premature mineralization, at the expense of incomplete chondrogenic differentiation. This emphasizes the importance of cholinergic signalling in cartilage and bone formation.<br />Competing Interests: The authors have declared that no competing interests exist.
- Subjects :
- Acetylcholinesterase physiology
Animals
Benzenaminium, 4,4'-(3-oxo-1,5-pentanediyl)bis(N,N-dimethyl-N-2-propenyl-), Dibromide pharmacology
Benzenaminium, 4,4'-(3-oxo-1,5-pentanediyl)bis(N,N-dimethyl-N-2-propenyl-), Dibromide toxicity
Bone and Bones enzymology
Bone and Bones pathology
Butyrylcholinesterase physiology
Cartilage enzymology
Cartilage pathology
Chick Embryo
Cholinesterase Inhibitors pharmacology
Cholinesterase Inhibitors toxicity
Chondrogenesis drug effects
GPI-Linked Proteins deficiency
GPI-Linked Proteins physiology
Mice
Mice, Knockout
Nicotine pharmacology
Nicotine toxicity
Organ Culture Techniques
alpha7 Nicotinic Acetylcholine Receptor drug effects
alpha7 Nicotinic Acetylcholine Receptor physiology
Acetylcholinesterase deficiency
Apnea physiopathology
Bone and Bones embryology
Butyrylcholinesterase deficiency
Cartilage embryology
Mesoderm physiology
Metabolism, Inborn Errors physiopathology
Osteogenesis physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1932-6203
- Volume :
- 12
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- PloS one
- Publication Type :
- Academic Journal
- Accession number :
- 28118357
- Full Text :
- https://doi.org/10.1371/journal.pone.0170252